Honda Research Institute Europe Offenbach/Main, Germany.
Front Comput Neurosci. 2012 Aug 21;6:55. doi: 10.3389/fncom.2012.00055. eCollection 2012.
Spike synchronization is thought to have a constructive role for feature integration, attention, associative learning, and the formation of bidirectionally connected Hebbian cell assemblies. By contrast, theoretical studies on spike-timing-dependent plasticity (STDP) report an inherently decoupling influence of spike synchronization on synaptic connections of coactivated neurons. For example, bidirectional synaptic connections as found in cortical areas could be reproduced only by assuming realistic models of STDP and rate coding. We resolve this conflict by theoretical analysis and simulation of various simple and realistic STDP models that provide a more complete characterization of conditions when STDP leads to either coupling or decoupling of neurons firing in synchrony. In particular, we show that STDP consistently couples synchronized neurons if key model parameters are matched to physiological data: First, synaptic potentiation must be significantly stronger than synaptic depression for small (positive or negative) time lags between presynaptic and postsynaptic spikes. Second, spike synchronization must be sufficiently imprecise, for example, within a time window of 5-10 ms instead of 1 ms. Third, axonal propagation delays should not be much larger than dendritic delays. Under these assumptions synchronized neurons will be strongly coupled leading to a dominance of bidirectional synaptic connections even for simple STDP models and low mean firing rates at the level of spontaneous activity.
尖峰同步被认为对特征整合、注意力、联想学习和双向连接的赫布型细胞集合的形成具有建设性作用。相比之下,关于尖峰时间依赖可塑性 (STDP) 的理论研究报告称,尖峰同步对共同激活神经元的突触连接具有固有的解耦影响。例如,只有在假设具有现实的 STDP 和率编码模型的情况下,才能再现皮质区域中发现的双向突触连接。我们通过对各种简单而现实的 STDP 模型的理论分析和模拟解决了这一冲突,这些模型更全面地描述了 STDP 导致同步发射的神经元耦合或解耦的条件。特别是,我们表明,如果关键模型参数与生理数据匹配,STDP 会一致地耦合同步神经元:首先,对于前突触和后突触尖峰之间的小(正或负)时间滞后,突触增强必须明显强于突触抑制。其次,尖峰同步必须足够不精确,例如在 5-10ms 的时间窗口内,而不是 1ms。第三,轴突传播延迟不应比树突延迟大得多。在这些假设下,同步神经元将被强烈耦合,即使对于简单的 STDP 模型和自发活动水平的低平均发射率,也会导致双向突触连接的主导地位。